本文采用传统的固相陶瓷烧结工艺,利用Ni2+取代Ba(Zn1/3Nb2/3)O3 的B位Zn2+形成固溶体来研究其微观结构.XRD表明,系统的主晶相为立方钙钛矿的BZNN,并有少量第二相如Ba5Nb4O15、BaNb2O6等存在.随Ni2+含量增加,系统晶格常数a减小;而随烧结温度升高,a逐渐增大.系统在1500 ℃下烧结时为固相烧结;当烧结温度为1550 ℃时,系统由固相烧结转变为液相烧结.较低温度下烧结时,在低角度区有很微弱的1∶ 2有序相产生;烧结温度升高,无序相增加,有序相消失.
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